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Cell Line, Tumor

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Full-Text Articles in Medical Specialties

Tumor Treating Fields Suppress Tumor Cell Growth And Neurologic Decline In Models Of Spinal Metastases, Daniel Ledbetter, Romulo Augusto Andrade De Almeida, Xizi Wu, Ariel Naveh, Chirag B Patel, Queena Gonzalez, Thomas H Beckham, Robert North, Laurence Rhines, Jing Li, Amol Ghia, David Aten, Claudio Tatsui, Christopher Alvarez-Breckenridge Mar 2024

Tumor Treating Fields Suppress Tumor Cell Growth And Neurologic Decline In Models Of Spinal Metastases, Daniel Ledbetter, Romulo Augusto Andrade De Almeida, Xizi Wu, Ariel Naveh, Chirag B Patel, Queena Gonzalez, Thomas H Beckham, Robert North, Laurence Rhines, Jing Li, Amol Ghia, David Aten, Claudio Tatsui, Christopher Alvarez-Breckenridge

Faculty, Staff and Student Publications

Spinal metastases can result in severe neurologic compromise and decreased overall survival. Despite treatment advances, local disease progression is frequent, highlighting the need for novel therapies. Tumor treating fields (TTFields) impair tumor cell replication and are influenced by properties of surrounding tissue. We hypothesized that bone's dielectric properties will enhance TTFields-mediated suppression of tumor growth in spinal metastasis models. Computational modeling of TTFields intensity was performed following surgical resection of a spinal metastasis and demonstrated enhanced TTFields intensity within the resected vertebral body. Additionally, luciferase-tagged human KRIB osteosarcoma and A549 lung adenocarcinoma cell lines were cultured in demineralized bone grafts …


Polyamine-Mediated Ferroptosis Amplification Acts As A Targetable Vulnerability In Cancer, Guoshu Bi, Jiaqi Liang, Yunyi Bian, Guangyao Shan, Yiwei Huang, Tao Lu, Huan Zhang, Xing Jin, Zhencong Chen, Mengnan Zhao, Hong Fan, Qun Wang, Boyi Gan, Cheng Zhan Mar 2024

Polyamine-Mediated Ferroptosis Amplification Acts As A Targetable Vulnerability In Cancer, Guoshu Bi, Jiaqi Liang, Yunyi Bian, Guangyao Shan, Yiwei Huang, Tao Lu, Huan Zhang, Xing Jin, Zhencong Chen, Mengnan Zhao, Hong Fan, Qun Wang, Boyi Gan, Cheng Zhan

Faculty, Staff and Student Publications

Targeting ferroptosis, an iron-dependent form of regulated cell death triggered by the lethal overload of lipid peroxides, in cancer therapy is impeded by our limited understanding of the intersection of tumour’s metabolic feature and ferroptosis vulnerability. In the present study, arginine is identified as a ferroptotic promoter using a metabolites library. This effect is mainly achieved through arginine’s conversion to polyamines, which exerts their potent ferroptosis-promoting property in an H2O2-dependent manner. Notably, the expression of ornithine decarboxylase 1 (ODC1), the critical enzyme catalysing polyamine synthesis, is significantly activated by the ferroptosis signal——iron overload——through WNT/MYC signalling, as well as the subsequent …


Diras3 Induces Autophagy And Enhances Sensitivity To Anti-Autophagic Therapy In Kras-Driven Pancreatic And Ovarian Carcinomas, Gamze Bildik, Joshua P Gray, Weiqun Mao, Hailing Yang, Rumeysa Ozyurt, Vivian R Orellana, Olivier De Wever, Mark S Carey, Robert C Bast, Zhen Lu Mar 2024

Diras3 Induces Autophagy And Enhances Sensitivity To Anti-Autophagic Therapy In Kras-Driven Pancreatic And Ovarian Carcinomas, Gamze Bildik, Joshua P Gray, Weiqun Mao, Hailing Yang, Rumeysa Ozyurt, Vivian R Orellana, Olivier De Wever, Mark S Carey, Robert C Bast, Zhen Lu

Faculty, Staff and Student Publications

Pancreatic ductal adenocarcinoma (PDAC) and low-grade ovarian cancer (LGSOC) are characterized by the prevalence of KRAS oncogene mutations. DIRAS3 is the first endogenous non-RAS protein that heterodimerizes with RAS, disrupts RAS clustering, blocks RAS signaling, and inhibits cancer cell growth. Here, we found that DIRAS3-mediated KRAS inhibition induces ROS-mediated apoptosis in PDAC and LGSOC cells with KRAS mutations, but not in cells with wild-type KRAS, by downregulating NFE2L2/Nrf2 transcription, reducing antioxidants, and inducing oxidative stress. DIRAS3 also induces cytoprotective macroautophagy/autophagy that may protect mutant KRAS cancer cells from oxidative stress, by inhibiting mutant KRAS, activating the STK11/LKB1-PRKAA/AMPK pathway, increasing lysosomal …


Targeting Glutamine Dependence With Drp-104 Inhibits Proliferation And Tumor Growth Of Castration-Resistant Prostate Cancer, David Moon, J Spencer Hauck, Xue Jiang, Holly Quang, Lingfan Xu, Fan Zhang, Xia Gao, Robert Wild, Jeffrey I Everitt, Everardo Macias, Yiping He, Jiaoti Huang Mar 2024

Targeting Glutamine Dependence With Drp-104 Inhibits Proliferation And Tumor Growth Of Castration-Resistant Prostate Cancer, David Moon, J Spencer Hauck, Xue Jiang, Holly Quang, Lingfan Xu, Fan Zhang, Xia Gao, Robert Wild, Jeffrey I Everitt, Everardo Macias, Yiping He, Jiaoti Huang

Faculty, Staff and Students Publications

BACKGROUND: Prostate cancer (PCa) continues to be one of the leading causes of cancer deaths in men. While androgen deprivation therapy is initially effective, castration-resistant PCa (CRPC) often recurs and has limited treatment options. Our previous study identified glutamine metabolism to be critical for CRPC growth. The glutamine antagonist 6-diazo-5-oxo-l-norleucine (DON) blocks both carbon and nitrogen pathways but has dose-limiting toxicity. The prodrug DRP-104 is expected to be preferentially converted to DON in tumor cells to inhibit glutamine utilization with minimal toxicity. However, CRPC cells' susceptibility to DRP-104 remains unclear.

METHODS: Human PCa cell lines (LNCaP, LAPC4, C4-2/MDVR, PC-3, 22RV1, …


Somatostatin Receptor Subtype-2 Targeting System For Specific Delivery Of Temozolomide, Solmaz Aghaamiri, Sukhen C Ghosh, Servando Hernandez Vargas, Daniel M Halperin, Ali Azhdarinia Feb 2024

Somatostatin Receptor Subtype-2 Targeting System For Specific Delivery Of Temozolomide, Solmaz Aghaamiri, Sukhen C Ghosh, Servando Hernandez Vargas, Daniel M Halperin, Ali Azhdarinia

Faculty, Staff and Student Publications

Temozolomide (TMZ) is a DNA alkylating agent that produces objective responses in patients with neuroendocrine tumors (NETs) when the DNA repair enzyme O6-methylguanine-DNA methyltransferase (MGMT) is inactivated. At high doses, TMZ therapy exhausts MGMT activity but also produces dose-limiting toxicities. To reduce off-target effects, we converted the clinically approved radiotracer 68Ga-DOTA-TOC into a peptide-drug conjugate (PDC) for targeted delivery of TMZ to somatostatin receptor subtype-2 (SSTR2)-positive tumor cells. We used an integrated radiolabeling strategy for direct quantitative assessment of receptor binding, pharmacokinetics, and tissue biodistribution. In vitro studies revealed selective binding to SSTR2-positive cells with high affinity (5.98 ± 0.96 …


P90rsk Pathway Inhibition Synergizes With Cisplatin In Tmem16a Overexpressing Head And Neck Cancer, Abdulkader Yassin-Kassab, Suman Chatterjee, Nayel Khan, Nathaniel Wang, Vlad C Sandulache, Eric H-B Huang, Timothy F Burns, Umamaheswar Duvvuri Feb 2024

P90rsk Pathway Inhibition Synergizes With Cisplatin In Tmem16a Overexpressing Head And Neck Cancer, Abdulkader Yassin-Kassab, Suman Chatterjee, Nayel Khan, Nathaniel Wang, Vlad C Sandulache, Eric H-B Huang, Timothy F Burns, Umamaheswar Duvvuri

Faculty, Staff and Students Publications

Head and neck squamous cell carcinoma (HNSCC) constitutes one of the most common types of human cancers and often metastasizes to lymph nodes. Platinum-based chemotherapeutic drugs are commonly used for treatment of a wide range of cancers, including HNSCC. Its mode of action relies on its ability to impede DNA repair mechanisms, inducing apoptosis in cancer cells. However, due to acquired resistance and toxic side-effects, researchers have been focusing on developing novel combinational therapeutic strategies to overcome cisplatin resistance. In the current study, we identified p90RSK, an ERK1/2 downstream target, as a key mediator and a targetable signaling node against …


Mutant P53 Protects Triple-Negative Breast Adenocarcinomas From Ferroptosis In Vivo, Denada Dibra, Shunbin Xiong, Sydney M Moyer, Adel K El-Naggar, Yuan Qi, Xiaoping Su, Elisabeth K Kong, Anil Korkut, Guillermina Lozano Feb 2024

Mutant P53 Protects Triple-Negative Breast Adenocarcinomas From Ferroptosis In Vivo, Denada Dibra, Shunbin Xiong, Sydney M Moyer, Adel K El-Naggar, Yuan Qi, Xiaoping Su, Elisabeth K Kong, Anil Korkut, Guillermina Lozano

Faculty, Staff and Student Publications

The TP53 tumor suppressor gene is mutated early in most of the patients with triple-negative breast cancer (TNBC). The most frequent TP53 alterations are missense mutations that contribute to tumor aggressiveness. Here, we used an autochthonous somatic TNBC mouse model, in which mutant p53 can be toggled on and off genetically while leaving the tumor microenvironment intact and wild-type for p53 to identify physiological dependencies on mutant p53. In TNBCs that develop in this model, deletion of two different hotspot p53R172H and p53R245W mutants triggers ferroptosis in vivo, a cell death mechanism involving iron-dependent lipid peroxidation. Mutant p53 protects cells …


Cpsf3 Inhibition Blocks Pancreatic Cancer Cell Proliferation Through Disruption Of Core Histone Mrna Processing, Abdulrahman A Alahmari, Aditi H Chaubey, Venkata S Jonnakuti, Arwen A Tisdale, Carla D Schwarz, Abigail C Cornwell, Kathryn E Maraszek, Emily J Paterson, Minsuh Kim, Swati Venkat, Eduardo Cortes Gomez, Jianmin Wang, Katerina V Gurova, Hari Krishna Yalamanchili, Michael E Feigin Feb 2024

Cpsf3 Inhibition Blocks Pancreatic Cancer Cell Proliferation Through Disruption Of Core Histone Mrna Processing, Abdulrahman A Alahmari, Aditi H Chaubey, Venkata S Jonnakuti, Arwen A Tisdale, Carla D Schwarz, Abigail C Cornwell, Kathryn E Maraszek, Emily J Paterson, Minsuh Kim, Swati Venkat, Eduardo Cortes Gomez, Jianmin Wang, Katerina V Gurova, Hari Krishna Yalamanchili, Michael E Feigin

Duncan NRI Faculty and Staff Publications

Pancreatic ductal adenocarcinoma (PDAC) is a lethal disease with limited effective treatment options, potentiating the importance of uncovering novel drug targets. Here, we target cleavage and polyadenylation specificity factor 3 (CPSF3), the 3′ endonuclease that catalyzes mRNA cleavage during polyadenylation and histone mRNA processing. We find that CPSF3 is highly expressed in PDAC and is associated with poor prognosis. CPSF3 knockdown blocks PDAC cell proliferation and colony formation in vitro and tumor growth in vivo. Chemical inhibition of CPSF3 by the small molecule JTE-607 also attenuates PDAC cell proliferation and colony formation, while it has no effect on cell proliferation …


Cpsf3 Inhibition Blocks Pancreatic Cancer Cell Proliferation Through Disruption Of Core Histone Mrna Processing, Abdulrahman A Alahmari, Aditi H Chaubey, Venkata S Jonnakuti, Arwen A Tisdale, Carla D Schwarz, Abigail C Cornwell, Kathryn E Maraszek, Emily J Paterson, Minsuh Kim, Swati Venkat, Eduardo Cortes Gomez, Jianmin Wang, Katerina V Gurova, Hari Krishna Yalamanchili, Michael E Feigin Feb 2024

Cpsf3 Inhibition Blocks Pancreatic Cancer Cell Proliferation Through Disruption Of Core Histone Mrna Processing, Abdulrahman A Alahmari, Aditi H Chaubey, Venkata S Jonnakuti, Arwen A Tisdale, Carla D Schwarz, Abigail C Cornwell, Kathryn E Maraszek, Emily J Paterson, Minsuh Kim, Swati Venkat, Eduardo Cortes Gomez, Jianmin Wang, Katerina V Gurova, Hari Krishna Yalamanchili, Michael E Feigin

Faculty, Staff and Students Publications

Pancreatic ductal adenocarcinoma (PDAC) is a lethal disease with limited effective treatment options, potentiating the importance of uncovering novel drug targets. Here, we target cleavage and polyadenylation specificity factor 3 (CPSF3), the 3′ endonuclease that catalyzes mRNA cleavage during polyadenylation and histone mRNA processing. We find that CPSF3 is highly expressed in PDAC and is associated with poor prognosis. CPSF3 knockdown blocks PDAC cell proliferation and colony formation in vitro and tumor growth in vivo. Chemical inhibition of CPSF3 by the small molecule JTE-607 also attenuates PDAC cell proliferation and colony formation, while it has no effect on cell proliferation …


The Il6/Jak/Stat3 Signaling Axis Is A Therapeutic Vulnerability In Smarcb1-Deficient Bladder Cancer, Chandra Sekhar Amara, Karthik Reddy Kami Reddy, Yang Yuntao, Yuen San Chan, Danthasinghe Waduge Badrajee Piyarathna, Lacey Elizabeth Dobrolecki, David J H Shih, Zhongcheng Shi, Jun Xu, Shixia Huang, Matthew J Ellis, Andrea B Apolo, Leomar Y Ballester, Jianjun Gao, Donna E Hansel, Yair Lotan, H Courtney Hodges, Seth P Lerner, Chad J Creighton, Arun Sreekumar, W Jim Zheng, Pavlos Msaouel, Shyam M Kavuri, Nagireddy Putluri Feb 2024

The Il6/Jak/Stat3 Signaling Axis Is A Therapeutic Vulnerability In Smarcb1-Deficient Bladder Cancer, Chandra Sekhar Amara, Karthik Reddy Kami Reddy, Yang Yuntao, Yuen San Chan, Danthasinghe Waduge Badrajee Piyarathna, Lacey Elizabeth Dobrolecki, David J H Shih, Zhongcheng Shi, Jun Xu, Shixia Huang, Matthew J Ellis, Andrea B Apolo, Leomar Y Ballester, Jianjun Gao, Donna E Hansel, Yair Lotan, H Courtney Hodges, Seth P Lerner, Chad J Creighton, Arun Sreekumar, W Jim Zheng, Pavlos Msaouel, Shyam M Kavuri, Nagireddy Putluri

Faculty, Staff and Student Publications

SMARCB1 loss has long been observed in many solid tumors. However, there is a need to elucidate targetable pathways driving growth and metastasis in SMARCB1-deficient tumors. Here, we demonstrate that SMARCB1 deficiency, defined as genomic SMARCB1 copy number loss associated with reduced mRNA, drives disease progression in patients with bladder cancer by engaging STAT3. SMARCB1 loss increases the chromatin accessibility of the STAT3 locus in vitro. Orthotopically implanted SMARCB1 knockout (KO) cell lines exhibit increased tumor growth and metastasis. SMARCB1-deficient tumors show an increased IL6/JAK/STAT3 signaling axis in in vivo models and patients. Furthermore, a pSTAT3 selective inhibitor, TTI-101, reduces …


Androgen Drives Melanoma Invasiveness And Metastatic Spread By Inducing Tumorigenic Fucosylation, Qian Liu, Emma Adhikari, Daniel K Lester, Bin Fang, Joseph O Johnson, Yijun Tian, Andrea T Mockabee-Macias, Victoria Izumi, Kelly M Guzman, Michael G White, John M Koomen, Jennifer A Wargo, Jane L Messina, Jianfei Qi, Eric K Lau Feb 2024

Androgen Drives Melanoma Invasiveness And Metastatic Spread By Inducing Tumorigenic Fucosylation, Qian Liu, Emma Adhikari, Daniel K Lester, Bin Fang, Joseph O Johnson, Yijun Tian, Andrea T Mockabee-Macias, Victoria Izumi, Kelly M Guzman, Michael G White, John M Koomen, Jennifer A Wargo, Jane L Messina, Jianfei Qi, Eric K Lau

Faculty, Staff and Student Publications

Melanoma incidence and mortality rates are historically higher for men than women. Although emerging studies have highlighted tumorigenic roles for the male sex hormone androgen and its receptor (AR) in melanoma, cellular and molecular mechanisms underlying these sex-associated discrepancies are poorly defined. Here, we delineate a previously undisclosed mechanism by which androgen-activated AR transcriptionally upregulates fucosyltransferase 4 (FUT4) expression, which drives melanoma invasiveness by interfering with adherens junctions (AJs). Global phosphoproteomic and fucoproteomic profiling, coupled with in vitro and in vivo functional validation, further reveal that AR-induced FUT4 fucosylates L1 cell adhesion molecule (L1CAM), which is required for FUT4-increased metastatic …


The Novel Phosphatase Nudt5 Is A Critical Regulator Of Triple-Negative Breast Cancer Growth, Jing Qian, Yanxia Ma, William M Tahaney, Cassandra L Moyer, Amanda Lanier, Jamal Hill, Darian Coleman, Negar Koupaei, Susan G Hilsenbeck, Michelle I Savage, Brent D G Page, Abhijit Mazumdar, Powel H Brown Feb 2024

The Novel Phosphatase Nudt5 Is A Critical Regulator Of Triple-Negative Breast Cancer Growth, Jing Qian, Yanxia Ma, William M Tahaney, Cassandra L Moyer, Amanda Lanier, Jamal Hill, Darian Coleman, Negar Koupaei, Susan G Hilsenbeck, Michelle I Savage, Brent D G Page, Abhijit Mazumdar, Powel H Brown

Faculty, Staff and Student Publications

BACKGROUND: The most aggressive form of breast cancer is triple-negative breast cancer (TNBC), which lacks expression of the estrogen receptor (ER) and progesterone receptor (PR), and does not have overexpression of the human epidermal growth factor receptor 2 (HER2). Treatment options for women with TNBC tumors are limited, unlike those with ER-positive tumors that can be treated with hormone therapy, or those with HER2-positive tumors that can be treated with anti-HER2 therapy. Therefore, we have sought to identify novel targeted therapies for TNBC. In this study, we investigated the potential of a novel phosphatase, NUDT5, as a potential therapeutic target …


Tumor-Specific Polycistronic Mirna Delivered By Engineered Exosomes For The Treatment Of Glioblastoma, Malcolm F Mcdonald, Anwar Hossain, Eric N Momin, Irtiza Hasan, Sanjay Singh, Satoshi Adachi, Joy Gumin, Daniel Ledbetter, Jing Yang, Lihong Long, Marc Daou, Sricharan Gopakumar, Lynette M Phillips, Brittany Parker Kerrigan, Frederick F Lang Feb 2024

Tumor-Specific Polycistronic Mirna Delivered By Engineered Exosomes For The Treatment Of Glioblastoma, Malcolm F Mcdonald, Anwar Hossain, Eric N Momin, Irtiza Hasan, Sanjay Singh, Satoshi Adachi, Joy Gumin, Daniel Ledbetter, Jing Yang, Lihong Long, Marc Daou, Sricharan Gopakumar, Lynette M Phillips, Brittany Parker Kerrigan, Frederick F Lang

Faculty, Staff and Student Publications

Background: Glioblastoma (GBM) has poor prognosis due to ineffective agents and poor delivery methods. MicroRNAs (miRs) have been explored as novel therapeutics for GBM, but the optimal miRs and the ideal delivery strategy remain unresolved. In this study, we sought to identify the most effective pan-subtype anti-GBM miRs and to develop an improved delivery system for these miRs.

Methods: We conducted an unbiased screen of over 600 miRs against 7 glioma stem cell (GSC) lines representing all GBM subtypes to identify a set of pan-subtype-specific anti-GBM miRs and then used available TCGA GBM patient outcomes and miR expression data to …


Development Of Resistance To Type Ii Jak2 Inhibitors In Mpn Depends On Axl Kinase And Is Targetable, Tamara Codilupi, Jakub Szybinski, Stefanie Arunasalam, Sarah Jungius, Andrew C Dunbar, Simona Stivala, Sime Brkic, Camille Albrecht, Lenka Vokalova, Julie L Yang, Katarzyna Buczak, Nilabh Ghosh, Jakob R Passweg, Alicia Rovo, Anne Angelillo-Scherrer, Dmitry Pankov, Stefan Dirnhofer, Ross L Levine, Richard Koche, Sara C Meyer Feb 2024

Development Of Resistance To Type Ii Jak2 Inhibitors In Mpn Depends On Axl Kinase And Is Targetable, Tamara Codilupi, Jakub Szybinski, Stefanie Arunasalam, Sarah Jungius, Andrew C Dunbar, Simona Stivala, Sime Brkic, Camille Albrecht, Lenka Vokalova, Julie L Yang, Katarzyna Buczak, Nilabh Ghosh, Jakob R Passweg, Alicia Rovo, Anne Angelillo-Scherrer, Dmitry Pankov, Stefan Dirnhofer, Ross L Levine, Richard Koche, Sara C Meyer

Faculty, Staff and Student Publications

PURPOSE: Myeloproliferative neoplasms (MPN) dysregulate JAK2 signaling. Because clinical JAK2 inhibitors have limited disease-modifying effects, type II JAK2 inhibitors such as CHZ868 stabilizing inactive JAK2 and reducing MPN clones, gain interest. We studied whether MPN cells escape from type ll inhibition.

EXPERIMENTAL DESIGN: MPN cells were continuously exposed to CHZ868. We used phosphoproteomic analyses and ATAC/RNA sequencing to characterize acquired resistance to type II JAK2 inhibition, and targeted candidate mediators in MPN cells and mice.

RESULTS: MPN cells showed increased IC50 and reduced apoptosis upon CHZ868 reflecting acquired resistance to JAK2 inhibition. Among >2,500 differential phospho-sites, MAPK pathway activation was …


Crispr Screening Identifies Bet And Mtor Inhibitor Synergy In Cholangiocarcinoma Through Serine Glycine One Carbon, Yan Zhu, Dengyong Zhang, Pooja Shukla, Young-Ho Jung, Prit Benny Malgulwar, Sharmeen Chagani, Medina Colic, Sarah Benjamin, John A Copland, Lin Tan, Philip L Lorenzi, Milind Javle, Jason T Huse, Jason Roszik, Traver Hart, Lawrence N Kwong Jan 2024

Crispr Screening Identifies Bet And Mtor Inhibitor Synergy In Cholangiocarcinoma Through Serine Glycine One Carbon, Yan Zhu, Dengyong Zhang, Pooja Shukla, Young-Ho Jung, Prit Benny Malgulwar, Sharmeen Chagani, Medina Colic, Sarah Benjamin, John A Copland, Lin Tan, Philip L Lorenzi, Milind Javle, Jason T Huse, Jason Roszik, Traver Hart, Lawrence N Kwong

Faculty, Staff and Student Publications

Patients with cholangiocarcinoma have poor clinical outcomes due to late diagnoses, poor prognoses, and limited treatment strategies. To identify drug combinations for this disease, we have conducted a genome-wide CRISPR screen anchored on the bromodomain and extraterminal domain (BET) PROTAC degrader ARV825, from which we identified anticancer synergy when combined with genetic ablation of members of the mTOR pathway. This combination effect was validated using multiple pharmacological BET and mTOR inhibitors, accompanied by increased levels of apoptosis and cell cycle arrest. In a xenograft model, combined BET degradation and mTOR inhibition induced tumor regression. Mechanistically, the 2 inhibitor classes converged …


Induced Degradation Of Lineage-Specific Oncoproteins Drives The Therapeutic Vulnerability Of Small Cell Lung Cancer To Parp Inhibitors, Chiho Kim, Xu-Dong Wang, Zhengshuai Liu, Jianwei Hao, Shuai Wang, Peng Li, Zhenzhen Zi, Qing Ding, Seoyeon Jang, Jiwoong Kim, Yikai Luo, Kenneth E Huffman, Shreoshi Pal Choudhuri, Sofia Del Rio, Ling Cai, Han Liang, Benjamin J Drapkin, John D Minna, Yonghao Yu Jan 2024

Induced Degradation Of Lineage-Specific Oncoproteins Drives The Therapeutic Vulnerability Of Small Cell Lung Cancer To Parp Inhibitors, Chiho Kim, Xu-Dong Wang, Zhengshuai Liu, Jianwei Hao, Shuai Wang, Peng Li, Zhenzhen Zi, Qing Ding, Seoyeon Jang, Jiwoong Kim, Yikai Luo, Kenneth E Huffman, Shreoshi Pal Choudhuri, Sofia Del Rio, Ling Cai, Han Liang, Benjamin J Drapkin, John D Minna, Yonghao Yu

Faculty, Staff and Student Publications

Although BRCA1/2 mutations are not commonly found in small cell lung cancer (SCLC), a substantial fraction of SCLC shows clinically relevant response to PARP inhibitors (PARPis). However, the underlying mechanism(s) of PARPi sensitivity in SCLC is poorly understood. We performed quantitative proteomic analyses and identified proteomic changes that signify PARPi responses in SCLC cells. We found that the vulnerability of SCLC to PARPi could be explained by the degradation of lineage-specific oncoproteins (e.g., ASCL1). PARPi-induced activation of the E3 ligase HUWE1 mediated the ubiquitin-proteasome system (UPS)-dependent ASCL1 degradation. Although PARPi induced a general DNA damage response in SCLC cells, this …


Metabolomic Rewiring Promotes Endocrine Therapy Resistance In Breast Cancer, Songyeon Ahn, Jun Hyoung Park, Sandra L Grimm, Danthasinghe Waduge Badrajee Piyarathna, Tagari Samanta, Vasanta Putluri, Dereck Mezquita, Suzanne A W Fuqua, Nagireddy Putluri, Cristian Coarfa, Benny Abraham Kaipparettu Jan 2024

Metabolomic Rewiring Promotes Endocrine Therapy Resistance In Breast Cancer, Songyeon Ahn, Jun Hyoung Park, Sandra L Grimm, Danthasinghe Waduge Badrajee Piyarathna, Tagari Samanta, Vasanta Putluri, Dereck Mezquita, Suzanne A W Fuqua, Nagireddy Putluri, Cristian Coarfa, Benny Abraham Kaipparettu

Faculty, Staff and Students Publications

Approximately one-third of endocrine-treated women with estrogen receptor-alpha positive (ER+) breast cancers (BC) are at risk of recurrence due to intrinsic or acquired resistance. Thus, it is vital to understand the mechanisms underlying endocrine therapy resistance in ER+ BC to improve patient treatment. Mitochondrial fatty acid β-oxidation (FAO) has been shown to be a major metabolic pathway in triple-negative BC (TNBC) that can activate Src signaling. Here, we found metabolic reprogramming that increases FAO in ER+ BC as a mechanism of resistance to endocrine therapy. A metabolically relevant, integrated gene signature was derived from transcriptomic, metabolomic, and lipidomic analyses in …


Development Of A Rabbit Human Glioblastoma Model For Testing Of Endovascular Selective Intra-Arterial Infusion (Esia) Of Novel Stem Cell-Based Therapeutics, Peter Kan, Visish M Srinivasan, Joy Gumin, Roberto Garcia, Stephen R Chen, Jeremiah N Johnson, Dalis E Collins, Melissa M Chen, Daniel Ledbetter, Jason Huse, Zean Aaron Evan Luna, Ariadna Robledo, Viren Vasandani, Abhijit Rao, Sanjay K Singh, Elizabeth J Shpall, Juan Fueyo, Candelaria Gomez-Manzano, Frederick F Lang Jan 2024

Development Of A Rabbit Human Glioblastoma Model For Testing Of Endovascular Selective Intra-Arterial Infusion (Esia) Of Novel Stem Cell-Based Therapeutics, Peter Kan, Visish M Srinivasan, Joy Gumin, Roberto Garcia, Stephen R Chen, Jeremiah N Johnson, Dalis E Collins, Melissa M Chen, Daniel Ledbetter, Jason Huse, Zean Aaron Evan Luna, Ariadna Robledo, Viren Vasandani, Abhijit Rao, Sanjay K Singh, Elizabeth J Shpall, Juan Fueyo, Candelaria Gomez-Manzano, Frederick F Lang

Faculty, Staff and Student Publications

BACKGROUND: Endovascular selective intra-arterial (ESIA) infusion of cellular oncotherapeutics is a rapidly evolving strategy for treating glioblastoma. Evaluation of ESIA infusion requires a unique animal model. Our goal was to create a rabbit human GBM model to test IA infusions of cellular therapies and to test its usefulness by employing clinical-grade microcatheters and infusion methods to deliver mesenchymal stem cells loaded with an oncolytic adenovirus, Delta-24-RGD (MSC-D24).

METHODS: Rabbits were immunosuppressed with mycophenolate mofetil, dexamethasone, and tacrolimus. They underwent stereotactic xenoimplantation of human GBM cell lines (U87, MDA-GSC-17, and MDA-GSC-8-11) into the right frontal lobe. Tumor formation was confirmed on …


Fak Drives Resistance To Therapy In Hpv-Negative Head And Neck Cancer In A P53-Dependent Manner, Phillip M Pifer, Liangpeng Yang, Manish Kumar, Tongxin Xie, Mitchell Frederick, Andrew Hefner, Beth Beadle, David Molkentine, Jessica Molkentine, Annika Dhawan, Mohamed Abdelhakiem, Abdullah A Osman, Brian J Leibowitz, Jeffrey N Myers, Curtis R Pickering, Vlad C Sandulache, John Heymach, Heath D Skinner Jan 2024

Fak Drives Resistance To Therapy In Hpv-Negative Head And Neck Cancer In A P53-Dependent Manner, Phillip M Pifer, Liangpeng Yang, Manish Kumar, Tongxin Xie, Mitchell Frederick, Andrew Hefner, Beth Beadle, David Molkentine, Jessica Molkentine, Annika Dhawan, Mohamed Abdelhakiem, Abdullah A Osman, Brian J Leibowitz, Jeffrey N Myers, Curtis R Pickering, Vlad C Sandulache, John Heymach, Heath D Skinner

Faculty, Staff and Student Publications

PURPOSE: Radiation and platinum-based chemotherapy form the backbone of therapy in human papillomavirus (HPV)-negative head and neck squamous cell carcinoma (HNSCC). We have correlated focal adhesion kinase (FAK/PTK2) expression with radioresistance and worse outcomes in these patients. However, the importance of FAK in driving radioresistance and its effects on chemoresistance in these patients remains unclear.

EXPERIMENTAL DESIGN: We performed an in vivo shRNA screen using targetable libraries to identify novel therapeutic sensitizers for radiation and chemotherapy.

RESULTS: We identified FAK as an excellent target for both radio- and chemosensitization. Because TP53 is mutated in over 80% of HPV-negative HNSCC, we …


Mir126-Targeted-Nanoparticles Combined With Pi3k/Akt Inhibitor As A New Strategy To Overcome Melanoma Resistance, Maria Beatrice Arasi, Gabriele De Luca, Laura Chronopoulou, Francesca Pedini, Eleonora Petrucci, Michela Flego, Annarita Stringaro, Marisa Colone, Luca Pasquini, Massimo Spada, Valentina Lulli, Maria Chiara Perrotta, George Adrian Calin, Cleofe Palocci, Mauro Biffoni, Federica Felicetti, Nadia Felli Jan 2024

Mir126-Targeted-Nanoparticles Combined With Pi3k/Akt Inhibitor As A New Strategy To Overcome Melanoma Resistance, Maria Beatrice Arasi, Gabriele De Luca, Laura Chronopoulou, Francesca Pedini, Eleonora Petrucci, Michela Flego, Annarita Stringaro, Marisa Colone, Luca Pasquini, Massimo Spada, Valentina Lulli, Maria Chiara Perrotta, George Adrian Calin, Cleofe Palocci, Mauro Biffoni, Federica Felicetti, Nadia Felli

Faculty, Staff and Student Publications

Metastatic melanoma poses significant challenges as a highly lethal disease. Despite the success of molecular targeting using BRAFV600E inhibitors (BRAFis) and immunotherapy, the emergence of early recurrence remains an issue and there is the need for novel therapeutic approaches. This study aimed at creating a targeted delivery system for the oncosuppressor microRNA 126 (miR126) and testing its effectiveness in combination with a phosphatidylinositol 3-kinase (PI3K)/ protein kinase B (AKT) inhibitor for treating metastatic melanoma resistant to BRAFis. To achieve this, we synthesized chitosan nanoparticles containing a chemically modified miR126 sequence. These nanoparticles were further functionalized with an antibody specific to …


Clic1-Mediated Autophagy Confers Resistance To Ddp In Gastric Cancer, Zhen-Liang Nong, Kun Zhao, Ye Wang, Zhu Yu, Cong-Jun Wang, Jun-Qiang Chen Jan 2024

Clic1-Mediated Autophagy Confers Resistance To Ddp In Gastric Cancer, Zhen-Liang Nong, Kun Zhao, Ye Wang, Zhu Yu, Cong-Jun Wang, Jun-Qiang Chen

Faculty, Staff and Student Publications

Gastric cancer has been a constant concern to researchers as one of the most common malignant tumors worldwide. The treatment options for gastric cancer include surgery, chemotherapy and traditional Chinese medicine. Chemotherapy is an effective treatment for patients with advanced gastric cancer. Cisplatin (DDP) has been approved as a critical chemotherapy drug to treat various kinds of solid tumors. Although DDP is an effective chemotherapeutic agent, many patients develop drug resistance during treatment, which has become a severe problem in clinical chemotherapy. This study aims to investigate the mechanism of DDP resistance in gastric cancer. The results show that intracellular …


From Mitochondria To Tumor Suppression: Acat1’S Crucial Role In Gastric Cancer, Wei He, Yanfang Li, Song-Bai Liu, Ying Chang, Shiyuan Han, Xingyu Han, Zixin Ma, Hesham M Amin, Yao-Hua Song, Jin Zhou Jan 2024

From Mitochondria To Tumor Suppression: Acat1’S Crucial Role In Gastric Cancer, Wei He, Yanfang Li, Song-Bai Liu, Ying Chang, Shiyuan Han, Xingyu Han, Zixin Ma, Hesham M Amin, Yao-Hua Song, Jin Zhou

Faculty, Staff and Student Publications

Acetyl CoA acetyltransferase 1 (ACAT1), a mitochondrial enzyme, is mainly involved in the formation and decomposition of ketones, isoleucine, and fatty acids. Previous clinical studies showed that mutations in the ACAT1 gene lead to ketoacidosis, Notably the role of ACAT1 in human cancer' pathogenesis varies depending on cancer type, and its specific role in gastric cancer remains largely unknown. In the current study, we found that the expression of ACAT1 in primary late-stage gastric cancer tumor tissues was significantly lower than in early-stage tumors. This observation was further confirmed in high-grade gastric cancer cell line MKN45. The expression of CD44 …


Single-Cell Rna Sequencing Analysis Identifies Acute Changes In The Tumor Microenvironment Induced By Interferon Α Gene Therapy In A Murine Bladder Cancer Model, Alexis R Steinmetz, Morgan Pierce, Alberto Martini, Come Tholomier, Ganiraju Manyam, Yan Chen, Akshay Sood, Jonathan J Duplisea, Burles A Johnson, Bogdan A Czerniak, Byron H Lee, Chinnaswamy Jagannath, Seppo Yla-Herttuala, Nigel R Parker, David J Mcconkey, Colin P Dinney, Sharada Mokkapati Jan 2024

Single-Cell Rna Sequencing Analysis Identifies Acute Changes In The Tumor Microenvironment Induced By Interferon Α Gene Therapy In A Murine Bladder Cancer Model, Alexis R Steinmetz, Morgan Pierce, Alberto Martini, Come Tholomier, Ganiraju Manyam, Yan Chen, Akshay Sood, Jonathan J Duplisea, Burles A Johnson, Bogdan A Czerniak, Byron H Lee, Chinnaswamy Jagannath, Seppo Yla-Herttuala, Nigel R Parker, David J Mcconkey, Colin P Dinney, Sharada Mokkapati

Faculty, Staff and Student Publications

Introduction: Nadofaragene firadenovec (Ad-IFNα/Syn3) is now approved for BCG-unresponsive bladder cancer (BLCA). IFNα is a pleiotropic cytokine that causes direct tumor cell killing via TRAIL-mediated apoptosis, angiogenesis inhibition, and activation of the innate and adaptive immune system. We established an immunocompetent murine BLCA model to study the effects of murine adenoviral IFNα (muAd-Ifnα) gene therapy on cancer cells and the tumor microenvironment using a novel murine equivalent of Nadofaragene firadenovec (muAd-Ifnα).

Methods: Tumors were induced by instilling MB49 cells into the bladders of mice; luciferase imaging confirmed tumor development. Mice were treated with adenovirus control (Ad-Ctrl; empty vector), or muAd-Ifnα …


Inhibition Of Src-3 As A Potential Therapeutic Strategy For Aggressive Mantle Cell Lymphoma, Imani Bijou, Yang Liu, Dong Lu, Jianwei Chen, Shelby Sloan, Lapo Alinari, David M Lonard, Bert W O'Malley, Michael Wang, Jin Wang Jan 2024

Inhibition Of Src-3 As A Potential Therapeutic Strategy For Aggressive Mantle Cell Lymphoma, Imani Bijou, Yang Liu, Dong Lu, Jianwei Chen, Shelby Sloan, Lapo Alinari, David M Lonard, Bert W O'Malley, Michael Wang, Jin Wang

Faculty, Staff and Students Publications

Mantle cell lymphoma (MCL) has a poor prognosis and high relapse rates despite current therapies, necessitating novel treatment regimens. Inhibition of SRC-3 show effectiveness in vivo and in vitro in other B cell lymphomas. Additionally, previous studies have shown that SRC-3 is highly expressed in the lymph nodes of B cell non-Hodgkin's lymphoma patients, suggesting SRC-3 may play a role in the progression of B cell lymphoma. This study aimed to investigate novel SRC-3 inhibitors, SI-10 and SI-12, in mantle cell lymphoma. The cytotoxic effects of SI-10 and SI-12 were evaluated in vitro and demonstrated dose-dependent cytotoxicity in a panel …


Stabilizing Vimentin Phosphorylation Inhibits Stem-Like Cell Properties And Metastasis Of Hybrid Epithelial/Mesenchymal Carcinomas, Nick A Kuburich, Petra Den Hollander, Maria Castaneda, Mika Pietilä, Ximing Tang, Harsh Batra, Francisco Martínez-Peña, Tanvi H Visal, Tieling Zhou, Breanna R Demestichas, Ritesh V Dontula, Jojo Y Liu, Joanna Joyce Maddela, Reethi S Padmanabhan, Lan Thi Hanh Phi, Matthew J Rosolen, Thiru Sabapathy, Dhiraj Kumar, Filippo G Giancotti, Luke L Lairson, Maria Gabriela Raso, Rama Soundararajan, Sendurai A Mani Dec 2023

Stabilizing Vimentin Phosphorylation Inhibits Stem-Like Cell Properties And Metastasis Of Hybrid Epithelial/Mesenchymal Carcinomas, Nick A Kuburich, Petra Den Hollander, Maria Castaneda, Mika Pietilä, Ximing Tang, Harsh Batra, Francisco Martínez-Peña, Tanvi H Visal, Tieling Zhou, Breanna R Demestichas, Ritesh V Dontula, Jojo Y Liu, Joanna Joyce Maddela, Reethi S Padmanabhan, Lan Thi Hanh Phi, Matthew J Rosolen, Thiru Sabapathy, Dhiraj Kumar, Filippo G Giancotti, Luke L Lairson, Maria Gabriela Raso, Rama Soundararajan, Sendurai A Mani

Faculty, Staff and Student Publications

Epithelial-mesenchymal transition (EMT) empowers epithelial cells with mesenchymal and stem-like attributes, facilitating metastasis, a leading cause of cancer-related mortality. Hybrid epithelial-mesenchymal (E/M) cells, retaining both epithelial and mesenchymal traits, exhibit heightened metastatic potential and stemness. The mesenchymal intermediate filament, vimentin, is upregulated during EMT, enhancing the resilience and invasiveness of carcinoma cells. The phosphorylation of vimentin is critical to its structure and function. Here, we identify that stabilizing vimentin phosphorylation at serine 56 induces multinucleation, specifically in hybrid E/M cells with stemness properties but not epithelial or mesenchymal cells. Cancer stem-like cells are especially susceptible to vimentin-induced multinucleation relative to …


Needle Biopsy Accelerates Pro-Metastatic Changes And Systemic Dissemination In Breast Cancer: Implications For Mortality By Surgery Delay, Hiroyasu Kameyama, Priya Dondapati, Reese Simmons, Macall Leslie, John Langenheim, Yunguang Sun, Misung Yi, Aubrey Rottschaefer, Rashmi Pathak, Shreya Nuguri, Kar-Ming Fung, Shirng-Wern Tsaih, Inna Chervoneva, Hallgeir Rui, Takemi Tanaka Dec 2023

Needle Biopsy Accelerates Pro-Metastatic Changes And Systemic Dissemination In Breast Cancer: Implications For Mortality By Surgery Delay, Hiroyasu Kameyama, Priya Dondapati, Reese Simmons, Macall Leslie, John Langenheim, Yunguang Sun, Misung Yi, Aubrey Rottschaefer, Rashmi Pathak, Shreya Nuguri, Kar-Ming Fung, Shirng-Wern Tsaih, Inna Chervoneva, Hallgeir Rui, Takemi Tanaka

Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers

ncreased breast cancer (BC) mortality risk posed by delayed surgical resection of tumor after diagnosis is a growing concern, yet the underlying mechanisms remain unknown. Our cohort analyses of early-stage BC patients reveal the emergence of a significantly rising mortality risk when the biopsy-to-surgery interval was extended beyond 53 days. Additionally, histology of post-biopsy tumors shows prolonged retention of a metastasis-permissive wound stroma dominated by M2-like macrophages capable of promoting cancer cell epithelial-to-mesenchymal transition and angiogenesis. We show that needle biopsy promotes systemic dissemination of cancer cells through a mechanism of sustained activation of the COX-2/PGE2/EP2 feedforward loop, …


Mirna-211 Maintains Metabolic Homeostasis In Medulloblastoma Through Its Target Gene Long-Chain Acyl-Coa Synthetase 4, Menglang Yuan, Iqbal Mahmud, Keisuke Katsushima, Kandarp Joshi, Olivier Saulnier, Rudramani Pokhrel, Bongyong Lee, Wathsala Liyanage, Haritha Kunhiraman, Stacie Stapleton, Ignacio Gonzalez-Gomez, Rangaramanujam M Kannan, Tanja Eisemann, Elayaraja Kolanthai, Sudipta Seal, Timothy J Garrett, Saed Abbasi, Kimberly Bockley, Justin Hanes, Prem Chapagain, George Jallo, Robert J Wechsler-Reya, Michael D Taylor, Charles G Eberhart, Animesh Ray, Ranjan J Perera Dec 2023

Mirna-211 Maintains Metabolic Homeostasis In Medulloblastoma Through Its Target Gene Long-Chain Acyl-Coa Synthetase 4, Menglang Yuan, Iqbal Mahmud, Keisuke Katsushima, Kandarp Joshi, Olivier Saulnier, Rudramani Pokhrel, Bongyong Lee, Wathsala Liyanage, Haritha Kunhiraman, Stacie Stapleton, Ignacio Gonzalez-Gomez, Rangaramanujam M Kannan, Tanja Eisemann, Elayaraja Kolanthai, Sudipta Seal, Timothy J Garrett, Saed Abbasi, Kimberly Bockley, Justin Hanes, Prem Chapagain, George Jallo, Robert J Wechsler-Reya, Michael D Taylor, Charles G Eberhart, Animesh Ray, Ranjan J Perera

Faculty, Staff and Students Publications

The prognosis of childhood medulloblastoma (MB) is often poor, and it usually requires aggressive therapy that adversely affects quality of life. microRNA-211 (miR-211) was previously identified as an important regulator of cells that descend from neural cells. Since medulloblastomas primarily affect cells with similar ontogeny, we investigated the role and mechanism of miR-211 in MB. Here we showed that miR-211 expression was highly downregulated in cell lines, PDXs, and clinical samples of different MB subgroups (SHH, Group 3, and Group 4) compared to normal cerebellum. miR-211 gene was ectopically expressed in transgenic cells from MB subgroups, and they were subjected …


Acidosis-Mediated Increase In Ifn-Γ-Induced Pd-L1 Expression On Cancer Cells As An Immune Escape Mechanism In Solid Tumors, Philipp Knopf, Dimitri Stowbur, Sabrina H L Hoffmann, Natalie Hermann, Andreas Maurer, Valentina Bucher, Marilena Poxleitner, Bredi Tako, Dominik Sonanini, Balaji Krishnamachary, Sanhita Sinharay, Birgit Fehrenbacher, Irene Gonzalez-Menendez, Felix Reckmann, David Bomze, Lukas Flatz, Daniela Kramer, Martin Schaller, Stephan Forchhammer, Zaver M Bhujwalla, Leticia Quintanilla-Martinez, Klaus Schulze-Osthoff, Mark D Pagel, Marieke F Fransen, Martin Röcken, André F Martins, Bernd J Pichler, Kamran Ghoreschi, Manfred Kneilling Dec 2023

Acidosis-Mediated Increase In Ifn-Γ-Induced Pd-L1 Expression On Cancer Cells As An Immune Escape Mechanism In Solid Tumors, Philipp Knopf, Dimitri Stowbur, Sabrina H L Hoffmann, Natalie Hermann, Andreas Maurer, Valentina Bucher, Marilena Poxleitner, Bredi Tako, Dominik Sonanini, Balaji Krishnamachary, Sanhita Sinharay, Birgit Fehrenbacher, Irene Gonzalez-Menendez, Felix Reckmann, David Bomze, Lukas Flatz, Daniela Kramer, Martin Schaller, Stephan Forchhammer, Zaver M Bhujwalla, Leticia Quintanilla-Martinez, Klaus Schulze-Osthoff, Mark D Pagel, Marieke F Fransen, Martin Röcken, André F Martins, Bernd J Pichler, Kamran Ghoreschi, Manfred Kneilling

Faculty, Staff and Student Publications

Immune checkpoint inhibitors have revolutionized cancer therapy, yet the efficacy of these treatments is often limited by the heterogeneous and hypoxic tumor microenvironment (TME) of solid tumors. In the TME, programmed death-ligand 1 (PD-L1) expression on cancer cells is mainly regulated by Interferon-gamma (IFN-γ), which induces T cell exhaustion and enables tumor immune evasion. In this study, we demonstrate that acidosis, a common characteristic of solid tumors, significantly increases IFN-γ-induced PD-L1 expression on aggressive cancer cells, thus promoting immune escape. Using preclinical models, we found that acidosis enhances the genomic expression and phosphorylation of signal transducer and activator of transcription …


Targeting Eif4a Triggers An Interferon Response To Synergize With Chemotherapy And Suppress Triple-Negative Breast Cancer, Na Zhao, Elena B Kabotyanski, Alexander B Saltzman, Anna Malovannaya, Xueying Yuan, Lucas C Reineke, Nadia Lieu, Yang Gao, Diego A Pedroza, Sebastian J Calderon, Alex J Smith, Clark Hamor, Kazem Safari, Sara Savage, Bing Zhang, Jianling Zhou, Luisa M Solis, Susan G Hilsenbeck, Cheng Fan, Charles M Perou, Jeffrey M Rosen Dec 2023

Targeting Eif4a Triggers An Interferon Response To Synergize With Chemotherapy And Suppress Triple-Negative Breast Cancer, Na Zhao, Elena B Kabotyanski, Alexander B Saltzman, Anna Malovannaya, Xueying Yuan, Lucas C Reineke, Nadia Lieu, Yang Gao, Diego A Pedroza, Sebastian J Calderon, Alex J Smith, Clark Hamor, Kazem Safari, Sara Savage, Bing Zhang, Jianling Zhou, Luisa M Solis, Susan G Hilsenbeck, Cheng Fan, Charles M Perou, Jeffrey M Rosen

Faculty, Staff and Students Publications

Protein synthesis is frequently dysregulated in cancer and selective inhibition of mRNA translation represents an attractive cancer therapy. Here, we show that therapeutically targeting the RNA helicase eIF4A with zotatifin, the first-in-class eIF4A inhibitor, exerts pleiotropic effects on both tumor cells and the tumor immune microenvironment in a diverse cohort of syngeneic triple-negative breast cancer (TNBC) mouse models. Zotatifin not only suppresses tumor cell proliferation but also directly repolarizes macrophages toward an M1-like phenotype and inhibits neutrophil infiltration, which sensitizes tumors to immune checkpoint blockade. Mechanistic studies revealed that zotatifin reprograms the tumor translational landscape, inhibits the translation of Sox4 …


Monitoring Glucocorticoid Receptor In Plasma-Derived Extracellular Vesicles As A Marker Of Resistance To Androgen Receptor Signaling Inhibition In Prostate Cancer, Emanuela Gentile, Andrew W Hahn, Jian H Song, Anh Hoang, Peter D A Shepherd, Sumankalai Ramachandran, Nora M Navone, Eleni Efstathiou, Mark Titus, Paul G Corn, Sue-Hwa Lin, Christopher J Logothetis, Theocharis Panaretakis Dec 2023

Monitoring Glucocorticoid Receptor In Plasma-Derived Extracellular Vesicles As A Marker Of Resistance To Androgen Receptor Signaling Inhibition In Prostate Cancer, Emanuela Gentile, Andrew W Hahn, Jian H Song, Anh Hoang, Peter D A Shepherd, Sumankalai Ramachandran, Nora M Navone, Eleni Efstathiou, Mark Titus, Paul G Corn, Sue-Hwa Lin, Christopher J Logothetis, Theocharis Panaretakis

Faculty, Staff and Student Publications

Disease progression following androgen ablation was shown to be associated with upregulation of the glucocorticoid receptor (GR). Longitudinal monitoring of GR expression in circulating extracellular vesicles (EV) may reflect changes in the tumor cell and facilitates detection of acquired resistance. We utilized LNCaP, LREX cells and a patient-derived xenograft, MDA PDX 322-2-6a, for in vitro and in vivo experiments. Plasma-derived EVs were isolated from patients with localized high-risk prostate cancer undergoing androgen ablation. The mRNA levels of GR in EVs and their responsive genes were detected by transcriptome analysis, qRT-PCR and the protein levels by Western blot analysis. We detected …